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Computationally efficient calculation of skew effects in brushless doubly-fed induction machines

机译:计算有效地计算无刷双馈感应电机的偏斜效应

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摘要

Brushless doubly-fed induction machines (DFIMs) have great potential as variable-speed generators in wind turbines. Undesired space-harmonics exist because the special rotor needs to couple to two stator windings with different pole-pair numbers and different frequencies. These undesired space-harmonics could lead to noise, vibrations and low power quality. Applying skewed slots can overcome the above drawbacks. Previously, a two-dimensional (2D) multi-slice finite element (FE) method was applied to study the effects of skew which was time consuming. In the stage of initial design, it is not efficient to use such a model to predict how much the average torque and the torque ripple would be reduced by skewing slots. This study makes use of normal 2D FE results and applies skew factors in post-processing to investigate the influence of rotor skew. It also proves that to apply skew factors appropriately, not only the space-harmonic order needs to be considered, but also the time-harmonic order. The proposed method can give an approximate prediction of skew effects with limited computing time. The results also indicate that skewing the rotor slot over one stator slot pitch could be a good choice to minimise the torque ripple in a brushless DFIM with a nested-loop rotor.
机译:无刷双馈感应电机(DFIM)作为风力涡轮机中的变速发电机具有巨大的潜力。存在不期望的空间谐波,因为特殊转子需要耦合到两个具有不同极对数和不同频率的定子绕组。这些有害的空间谐波会导致噪声,振动和低电能质量。应用倾斜的插槽可以克服上述缺陷。以前,使用二维(2D)多层有限元(FE)方法研究耗时的偏斜效果。在初始设计阶段,使用这种模型来预测通过倾斜槽缝将平均减少多少平均扭矩和扭矩波动是没有效率的。这项研究利用正常的2D FE结果并在后处理中应用偏斜因子来研究转子偏斜的影响。这也证明了适当地应用偏斜因子,不仅需要考虑空间谐和阶,而且还需要考虑时间谐和阶。所提出的方法可以在有限的计算时间内给出偏斜效应的近似预测。结果还表明,将转子槽倾斜一个定子槽螺距可能是减小带嵌套转子的无刷DFIM转矩脉动的好选择。

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